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Applications of xerophytophysiology in plant production - LED blue light as a stimulus improved the tomato crop.

机译:干旱植物生理学在植物生产中的应用-LED蓝光作为刺激物改善了番茄作物。

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Recent research using Arabidopsis has shown that blue light stimulates the plant through the receptor protein and induces regulations physiologically and morphologically. It is important to know whether the theory can be used in food crop production. In the present study blue light emitted from light-emitting diodes (LED) was used as a stimulus to tomato crop canopy after sunset for 2 h to induce xerophytophysiological regulations. Blue (450 nm), white and red (660 nm) LED lamps, all with a properties of 0.48 W, 24 V, and 45 mol m 2 s -1 at 10 cm over the lamp, were compared with non-illumination control. A 2*4 two factor experiment was conducted in a randomized split block design with the two cultivars as the main block. Results showed that the osmotic potential in the symplasm at full turgor was lower and the leaf turgor potential at full turgor was higher in tomato leaves in blue light treatment. The water fraction in the symplasm in the leaf was larger or the apoplastic water fraction was smaller in leaf of blue light irradiated plants. Both osmotic potential and relative water content at the point of incipient plasmolysis were lower in tomato leaves in blue light treatment. More leaf water was lost by stomatal transpiration and less leaf water was lost by cuticular transpiration in leaves of blue light treated tomato plants. Fruit color was improved and redder in blue light treatment. Fruit yield was increased by all light illumination treatments. The damage of fruit caused by Helicoverpa armigera worms was more severely in red light treatment and less severely in blue and white light treatments compared with the control. The leaf blight index was lower in blue and white light illumination treatments than the red light treatment and the control. Both cultivars showed LED illumination responses similar to each other although fruit yield was lower and leaf blight was severer in 'Baiju' than in 'Myoko'. In conclusion, illumination treatment with blue light from LED as a stimulus was effective in fruit yield increase and quality improvement as well as improvement in disease resistance of the tomato crop.
机译:使用拟南芥的最新研究表明,蓝光通过受体蛋白刺激植物,并在生理和形态上诱导调控。重要的是要知道该理论是否可以用于粮食作物生产。在本研究中,从发光二极管(LED)发出的蓝光用作日落后2 h的番茄作物冠层刺激,以诱导植物生理生态调节。将蓝色(450 nm),白色和红色(660 nm)LED灯(在灯上方10 cm处具有0.48 W,24 V和45 mol m 2 s -1的特性)与非照明控件进行了比较。以两个品种为主要块,在随机分割块设计中进行了2×4两因素实验。结果表明,在蓝光处理下,番茄的叶片在全膨大的同质中的渗透势较低,在全膨大的叶片中的膨大势较高。蓝光照射的植物叶片中叶片内质体中的水分含量较大,或质外体水分含量较小。在蓝光处理下,番茄叶片的初始溶质作用时的渗透势和相对含水量均较低。蓝光处理的番茄植株的叶片中,气孔蒸腾损失了更多的叶子水分,而表皮蒸腾损失了更少的叶子水分。蓝光处理可改善果实色泽并变红。所有光照处理均提高了水果产量。与对照组相比,在红光处理中,棉铃虫对果实造成的损害更为严重,而在蓝光和白光处理中,危害较小。在蓝光和白光照明处理中,叶枯病指数低于红光处理和对照。与'Myoko'相比,'Baiju'的果实产量更低且叶片枯萎病更严重,两个品种的LED照度响应彼此相似。综上所述,以LED发出的蓝光作为刺激物进行光照处理,对提高番茄的果实产量,提高品质,提高抗病性均有效。

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